Fragmentation of Chilean Andean rivers: expected effects of hydropower development
暂无分享,去创建一个
[1] O. Link,et al. River science and management issues in Chile: Hydropower development and native fish communities , 2018, River Research and Applications.
[2] C. Baker,et al. Not just a migration problem: Metapopulations, habitat shifts, and gene flow are also important for fishway science and management , 2018, River Research and Applications.
[3] Jesse R. O’Hanley,et al. A unified model for optimizing riverscape conservation , 2018 .
[4] E. Habit,et al. Variation of the use of marine resources by Galaxias maculatus in large Chilean rivers , 2018, Hydrobiologia.
[5] Jesse R. O’Hanley,et al. A toolkit for optimizing fish passage barrier mitigation actions , 2017 .
[6] Diego García de Jalón,et al. Longitudinal connectivity loss in a riverine network: accounting for the likelihood of upstream and downstream movement across dams , 2017, Aquatic Sciences.
[7] Oscar Link,et al. Hydropower Development, Riverine Connectivity, and Non‐sport Fish Species: criteria for Hydraulic Design of Fishways , 2016 .
[8] Martin C. Thoms,et al. A Watershed Integrity Definition and Assessment Approach to Support Strategic Management of Watersheds , 2016 .
[9] N. Dulvy,et al. Fish conservation in freshwater and marine realms: status, threats and management , 2016 .
[10] D. Gilvear,et al. River Science: Research and Management for the 21st Century , 2016 .
[11] M. Delong,et al. An ecosystem framework for river science and management , 2016 .
[12] J. Lundberg,et al. Balancing hydropower and biodiversity in the Amazon, Congo, and Mekong , 2016, Science.
[13] M. Fedora,et al. Effects of Road Crossings on Habitat Connectivity for Stream‐Resident Fish , 2015 .
[14] D. Strayer,et al. Causes and consequences of habitat fragmentation in river networks , 2015, Annals of the New York Academy of Sciences.
[15] E. Grant,et al. Unifying research on the fragmentation of terrestrial and aquatic habitats: patches, connectivity and the matrix in riverscapes , 2015 .
[16] M. T. Ferreira,et al. Historical changes in the functional connectivity of rivers based on spatial network analysis and the past occurrences of diadromous species in Portugal , 2015, Aquatic Sciences.
[17] Rebecca A. Efroymson,et al. Spatial design principles for sustainable hydropower development in river basins , 2015 .
[18] K. Steenland,et al. Chile Confronts its Environmental Health Future After 25 Years of Accelerated Growth. , 2015, Annals of global health.
[19] J. Valdes,et al. Water governance in Chile: Availability, management and climate change , 2014 .
[20] Nikolai Sindorf,et al. Development of new indicators to evaluate river fragmentation and flow regulation at large scales: A case study for the Mekong River Basin , 2014 .
[21] F. WiersmaYolanda,et al. Assessing the biological relevance of aquatic connectivity to stream fish communities , 2014 .
[22] M. Palmer,et al. Riverine macrosystems ecology: sensitivity, resistance, and resilience of whole river basins with human alterations , 2014 .
[23] N. Bonada,et al. Freshwater biodiversity and conservation in mediterranean climate streams of Chile , 2013, Hydrobiologia.
[24] N. Bonada,et al. Freshwater biodiversity and conservation in mediterranean climate streams of Chile , 2013, Hydrobiologia.
[25] Jed Wright,et al. Restoring stream habitat connectivity: a proposed method for prioritizing the removal of resident fish passage barriers. , 2013, Journal of environmental management.
[26] T. Bonner,et al. Fragmentation and Drought Legacy Correlate with Distribution of Burrhead Chub in Subtropical Streams of North America , 2013 .
[27] S. Sabater,et al. Effects of hydromorphological impacts on river ecosystem functioning: a review and suggestions for assessing ecological impacts , 2013, Hydrobiologia.
[28] M. T. Ferreira,et al. Prioritizing restoration of structural connectivity in rivers: a graph based approach , 2013, Landscape Ecology.
[29] J. Tonkin,et al. Macroinvertebrate drift-benthos trends in a regulated river , 2013 .
[30] K. Gido,et al. Fragmentation alters stream fish community structure in dendritic ecological networks. , 2012, Ecological applications : a publication of the Ecological Society of America.
[31] S. B. Cook,et al. Prioritizing aquatic conservation areas using spatial patterns and partitioning of fish community diversity in a near‐natural temperate basin , 2012 .
[32] Rebecca Ng,et al. Implications of Dam Obstruction for Global Freshwater Fish Diversity , 2012 .
[33] R. Vogel,et al. The impact of dams on flood flows in the United States , 2011 .
[34] P. Döll,et al. High‐resolution mapping of the world's reservoirs and dams for sustainable river‐flow management , 2011 .
[35] Y. Wiersma,et al. Barriers to fish passage and barriers to fish passage assessments: the impact of assessment methods and assumptions on barrier identification and quantification of watershed connectivity , 2011, Aquatic Ecology.
[36] G. Pess,et al. Hydrological connectivity for riverine fish: measurement challenges and research opportunities , 2010 .
[37] P. McIntyre,et al. Global threats to human water security and river biodiversity , 2010, Nature.
[38] J. Olden,et al. Homogenization of regional river dynamics by dams and global biodiversity implications , 2007, Proceedings of the National Academy of Sciences.
[39] W. Fagan,et al. Living in the branches: population dynamics and ecological processes in dendritic networks. , 2007, Ecology letters.
[40] I. Vila,et al. Estado de conocimiento de los peces dulceacuícolas de Chile , 2006 .
[41] A. Arthington,et al. Basic Principles and Ecological Consequences of Altered Flow Regimes for Aquatic Biodiversity , 2002, Environmental management.
[42] R. Sparks,et al. THE NATURAL FLOW REGIME. A PARADIGM FOR RIVER CONSERVATION AND RESTORATION , 1997 .
[43] I. Vila,et al. Current situation of the fish fauna in the Mediterranean región of Andean river systems in Chile. , 2015 .
[44] K. Tockner,et al. A global boom in hydropower dam construction , 2014, Aquatic Sciences.
[45] D. Véliz,et al. Diferenciación morfológica en especies del género Cheirodon (Ostariophysi: Characidae) mediante morfometría tradicional y geométrica , 2012 .
[46] R. Rolls. The role of life-history and location of barriers to migration in the spatial distribution and conservation of fish assemblages in a coastal river system , 2011 .
[47] J. Olden,et al. Incorporating thermal regimes into environmental flows assessments: modifying dam operations to restore freshwater ecosystem integrity , 2010 .
[48] Yolanda F. Wiersma,et al. A new measure of longitudinal connectivity for stream networks , 2008, Landscape Ecology.
[49] O. Parra,et al. Response of the fish community to human‐induced changes in the Biobío River in Chile , 2006 .
[50] B. Dyer. Systematic review and biogeography of the freshwater fishes of Chile , 2000 .